github.com/ethw3/go-ethereuma@v0.0.0-20221013053120-c14602a4c23c/eth/tracers/internal/tracetest/calltrace_test.go (about)

     1  // Copyright 2021 The go-ethereum Authors
     2  // This file is part of the go-ethereum library.
     3  //
     4  // The go-ethereum library is free software: you can redistribute it and/or modify
     5  // it under the terms of the GNU Lesser General Public License as published by
     6  // the Free Software Foundation, either version 3 of the License, or
     7  // (at your option) any later version.
     8  //
     9  // The go-ethereum library is distributed in the hope that it will be useful,
    10  // but WITHOUT ANY WARRANTY; without even the implied warranty of
    11  // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
    12  // GNU Lesser General Public License for more details.
    13  //
    14  // You should have received a copy of the GNU Lesser General Public License
    15  // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
    16  
    17  package tracetest
    18  
    19  import (
    20  	"encoding/json"
    21  	"math/big"
    22  	"os"
    23  	"path/filepath"
    24  	"reflect"
    25  	"strings"
    26  	"testing"
    27  	"unicode"
    28  
    29  	"github.com/ethw3/go-ethereuma/common"
    30  	"github.com/ethw3/go-ethereuma/common/hexutil"
    31  	"github.com/ethw3/go-ethereuma/common/math"
    32  	"github.com/ethw3/go-ethereuma/core"
    33  	"github.com/ethw3/go-ethereuma/core/rawdb"
    34  	"github.com/ethw3/go-ethereuma/core/types"
    35  	"github.com/ethw3/go-ethereuma/core/vm"
    36  	"github.com/ethw3/go-ethereuma/crypto"
    37  	"github.com/ethw3/go-ethereuma/eth/tracers"
    38  	"github.com/ethw3/go-ethereuma/params"
    39  	"github.com/ethw3/go-ethereuma/rlp"
    40  	"github.com/ethw3/go-ethereuma/tests"
    41  
    42  	// Force-load native and js packages, to trigger registration
    43  	_ "github.com/ethw3/go-ethereuma/eth/tracers/js"
    44  	_ "github.com/ethw3/go-ethereuma/eth/tracers/native"
    45  )
    46  
    47  // To generate a new callTracer test, copy paste the makeTest method below into
    48  // a Geth console and call it with a transaction hash you which to export.
    49  
    50  /*
    51  // makeTest generates a callTracer test by running a prestate reassembled and a
    52  // call trace run, assembling all the gathered information into a test case.
    53  var makeTest = function(tx, rewind) {
    54    // Generate the genesis block from the block, transaction and prestate data
    55    var block   = eth.getBlock(eth.getTransaction(tx).blockHash);
    56    var genesis = eth.getBlock(block.parentHash);
    57  
    58    delete genesis.gasUsed;
    59    delete genesis.logsBloom;
    60    delete genesis.parentHash;
    61    delete genesis.receiptsRoot;
    62    delete genesis.sha3Uncles;
    63    delete genesis.size;
    64    delete genesis.transactions;
    65    delete genesis.transactionsRoot;
    66    delete genesis.uncles;
    67  
    68    genesis.gasLimit  = genesis.gasLimit.toString();
    69    genesis.number    = genesis.number.toString();
    70    genesis.timestamp = genesis.timestamp.toString();
    71  
    72    genesis.alloc = debug.traceTransaction(tx, {tracer: "prestateTracer", rewind: rewind});
    73    for (var key in genesis.alloc) {
    74      genesis.alloc[key].nonce = genesis.alloc[key].nonce.toString();
    75    }
    76    genesis.config = admin.nodeInfo.protocols.eth.config;
    77  
    78    // Generate the call trace and produce the test input
    79    var result = debug.traceTransaction(tx, {tracer: "callTracer", rewind: rewind});
    80    delete result.time;
    81  
    82    console.log(JSON.stringify({
    83      genesis: genesis,
    84      context: {
    85        number:     block.number.toString(),
    86        difficulty: block.difficulty,
    87        timestamp:  block.timestamp.toString(),
    88        gasLimit:   block.gasLimit.toString(),
    89        miner:      block.miner,
    90      },
    91      input:  eth.getRawTransaction(tx),
    92      result: result,
    93    }, null, 2));
    94  }
    95  */
    96  
    97  type callContext struct {
    98  	Number     math.HexOrDecimal64   `json:"number"`
    99  	Difficulty *math.HexOrDecimal256 `json:"difficulty"`
   100  	Time       math.HexOrDecimal64   `json:"timestamp"`
   101  	GasLimit   math.HexOrDecimal64   `json:"gasLimit"`
   102  	Miner      common.Address        `json:"miner"`
   103  }
   104  
   105  // callTrace is the result of a callTracer run.
   106  type callTrace struct {
   107  	Type    string          `json:"type"`
   108  	From    common.Address  `json:"from"`
   109  	To      common.Address  `json:"to"`
   110  	Input   hexutil.Bytes   `json:"input"`
   111  	Output  hexutil.Bytes   `json:"output"`
   112  	Gas     *hexutil.Uint64 `json:"gas,omitempty"`
   113  	GasUsed *hexutil.Uint64 `json:"gasUsed,omitempty"`
   114  	Value   *hexutil.Big    `json:"value,omitempty"`
   115  	Error   string          `json:"error,omitempty"`
   116  	Calls   []callTrace     `json:"calls,omitempty"`
   117  }
   118  
   119  // callTracerTest defines a single test to check the call tracer against.
   120  type callTracerTest struct {
   121  	Genesis      *core.Genesis   `json:"genesis"`
   122  	Context      *callContext    `json:"context"`
   123  	Input        string          `json:"input"`
   124  	TracerConfig json.RawMessage `json:"tracerConfig"`
   125  	Result       *callTrace      `json:"result"`
   126  }
   127  
   128  // Iterates over all the input-output datasets in the tracer test harness and
   129  // runs the JavaScript tracers against them.
   130  func TestCallTracerLegacy(t *testing.T) {
   131  	testCallTracer("callTracerLegacy", "call_tracer_legacy", t)
   132  }
   133  
   134  func TestCallTracerNative(t *testing.T) {
   135  	testCallTracer("callTracer", "call_tracer", t)
   136  }
   137  
   138  func testCallTracer(tracerName string, dirPath string, t *testing.T) {
   139  	files, err := os.ReadDir(filepath.Join("testdata", dirPath))
   140  	if err != nil {
   141  		t.Fatalf("failed to retrieve tracer test suite: %v", err)
   142  	}
   143  	for _, file := range files {
   144  		if !strings.HasSuffix(file.Name(), ".json") {
   145  			continue
   146  		}
   147  		file := file // capture range variable
   148  		t.Run(camel(strings.TrimSuffix(file.Name(), ".json")), func(t *testing.T) {
   149  			t.Parallel()
   150  
   151  			var (
   152  				test = new(callTracerTest)
   153  				tx   = new(types.Transaction)
   154  			)
   155  			// Call tracer test found, read if from disk
   156  			if blob, err := os.ReadFile(filepath.Join("testdata", dirPath, file.Name())); err != nil {
   157  				t.Fatalf("failed to read testcase: %v", err)
   158  			} else if err := json.Unmarshal(blob, test); err != nil {
   159  				t.Fatalf("failed to parse testcase: %v", err)
   160  			}
   161  			if err := rlp.DecodeBytes(common.FromHex(test.Input), tx); err != nil {
   162  				t.Fatalf("failed to parse testcase input: %v", err)
   163  			}
   164  			// Configure a blockchain with the given prestate
   165  			var (
   166  				signer    = types.MakeSigner(test.Genesis.Config, new(big.Int).SetUint64(uint64(test.Context.Number)))
   167  				origin, _ = signer.Sender(tx)
   168  				txContext = vm.TxContext{
   169  					Origin:   origin,
   170  					GasPrice: tx.GasPrice(),
   171  				}
   172  				context = vm.BlockContext{
   173  					CanTransfer: core.CanTransfer,
   174  					Transfer:    core.Transfer,
   175  					Coinbase:    test.Context.Miner,
   176  					BlockNumber: new(big.Int).SetUint64(uint64(test.Context.Number)),
   177  					Time:        new(big.Int).SetUint64(uint64(test.Context.Time)),
   178  					Difficulty:  (*big.Int)(test.Context.Difficulty),
   179  					GasLimit:    uint64(test.Context.GasLimit),
   180  				}
   181  				_, statedb = tests.MakePreState(rawdb.NewMemoryDatabase(), test.Genesis.Alloc, false)
   182  			)
   183  			tracer, err := tracers.New(tracerName, new(tracers.Context), test.TracerConfig)
   184  			if err != nil {
   185  				t.Fatalf("failed to create call tracer: %v", err)
   186  			}
   187  			evm := vm.NewEVM(context, txContext, statedb, test.Genesis.Config, vm.Config{Debug: true, Tracer: tracer})
   188  			msg, err := tx.AsMessage(signer, nil)
   189  			if err != nil {
   190  				t.Fatalf("failed to prepare transaction for tracing: %v", err)
   191  			}
   192  			st := core.NewStateTransition(evm, msg, new(core.GasPool).AddGas(tx.Gas()))
   193  			if _, err = st.TransitionDb(); err != nil {
   194  				t.Fatalf("failed to execute transaction: %v", err)
   195  			}
   196  			// Retrieve the trace result and compare against the etalon
   197  			res, err := tracer.GetResult()
   198  			if err != nil {
   199  				t.Fatalf("failed to retrieve trace result: %v", err)
   200  			}
   201  			ret := new(callTrace)
   202  			if err := json.Unmarshal(res, ret); err != nil {
   203  				t.Fatalf("failed to unmarshal trace result: %v", err)
   204  			}
   205  
   206  			if !jsonEqual(ret, test.Result) {
   207  				// uncomment this for easier debugging
   208  				//have, _ := json.MarshalIndent(ret, "", " ")
   209  				//want, _ := json.MarshalIndent(test.Result, "", " ")
   210  				//t.Fatalf("trace mismatch: \nhave %+v\nwant %+v", string(have), string(want))
   211  				t.Fatalf("trace mismatch: \nhave %+v\nwant %+v", ret, test.Result)
   212  			}
   213  		})
   214  	}
   215  }
   216  
   217  // jsonEqual is similar to reflect.DeepEqual, but does a 'bounce' via json prior to
   218  // comparison
   219  func jsonEqual(x, y interface{}) bool {
   220  	xTrace := new(callTrace)
   221  	yTrace := new(callTrace)
   222  	if xj, err := json.Marshal(x); err == nil {
   223  		json.Unmarshal(xj, xTrace)
   224  	} else {
   225  		return false
   226  	}
   227  	if yj, err := json.Marshal(y); err == nil {
   228  		json.Unmarshal(yj, yTrace)
   229  	} else {
   230  		return false
   231  	}
   232  	return reflect.DeepEqual(xTrace, yTrace)
   233  }
   234  
   235  // camel converts a snake cased input string into a camel cased output.
   236  func camel(str string) string {
   237  	pieces := strings.Split(str, "_")
   238  	for i := 1; i < len(pieces); i++ {
   239  		pieces[i] = string(unicode.ToUpper(rune(pieces[i][0]))) + pieces[i][1:]
   240  	}
   241  	return strings.Join(pieces, "")
   242  }
   243  func BenchmarkTracers(b *testing.B) {
   244  	files, err := os.ReadDir(filepath.Join("testdata", "call_tracer"))
   245  	if err != nil {
   246  		b.Fatalf("failed to retrieve tracer test suite: %v", err)
   247  	}
   248  	for _, file := range files {
   249  		if !strings.HasSuffix(file.Name(), ".json") {
   250  			continue
   251  		}
   252  		file := file // capture range variable
   253  		b.Run(camel(strings.TrimSuffix(file.Name(), ".json")), func(b *testing.B) {
   254  			blob, err := os.ReadFile(filepath.Join("testdata", "call_tracer", file.Name()))
   255  			if err != nil {
   256  				b.Fatalf("failed to read testcase: %v", err)
   257  			}
   258  			test := new(callTracerTest)
   259  			if err := json.Unmarshal(blob, test); err != nil {
   260  				b.Fatalf("failed to parse testcase: %v", err)
   261  			}
   262  			benchTracer("callTracer", test, b)
   263  		})
   264  	}
   265  }
   266  
   267  func benchTracer(tracerName string, test *callTracerTest, b *testing.B) {
   268  	// Configure a blockchain with the given prestate
   269  	tx := new(types.Transaction)
   270  	if err := rlp.DecodeBytes(common.FromHex(test.Input), tx); err != nil {
   271  		b.Fatalf("failed to parse testcase input: %v", err)
   272  	}
   273  	signer := types.MakeSigner(test.Genesis.Config, new(big.Int).SetUint64(uint64(test.Context.Number)))
   274  	msg, err := tx.AsMessage(signer, nil)
   275  	if err != nil {
   276  		b.Fatalf("failed to prepare transaction for tracing: %v", err)
   277  	}
   278  	origin, _ := signer.Sender(tx)
   279  	txContext := vm.TxContext{
   280  		Origin:   origin,
   281  		GasPrice: tx.GasPrice(),
   282  	}
   283  	context := vm.BlockContext{
   284  		CanTransfer: core.CanTransfer,
   285  		Transfer:    core.Transfer,
   286  		Coinbase:    test.Context.Miner,
   287  		BlockNumber: new(big.Int).SetUint64(uint64(test.Context.Number)),
   288  		Time:        new(big.Int).SetUint64(uint64(test.Context.Time)),
   289  		Difficulty:  (*big.Int)(test.Context.Difficulty),
   290  		GasLimit:    uint64(test.Context.GasLimit),
   291  	}
   292  	_, statedb := tests.MakePreState(rawdb.NewMemoryDatabase(), test.Genesis.Alloc, false)
   293  
   294  	b.ReportAllocs()
   295  	b.ResetTimer()
   296  	for i := 0; i < b.N; i++ {
   297  		tracer, err := tracers.New(tracerName, new(tracers.Context), nil)
   298  		if err != nil {
   299  			b.Fatalf("failed to create call tracer: %v", err)
   300  		}
   301  		evm := vm.NewEVM(context, txContext, statedb, test.Genesis.Config, vm.Config{Debug: true, Tracer: tracer})
   302  		snap := statedb.Snapshot()
   303  		st := core.NewStateTransition(evm, msg, new(core.GasPool).AddGas(tx.Gas()))
   304  		if _, err = st.TransitionDb(); err != nil {
   305  			b.Fatalf("failed to execute transaction: %v", err)
   306  		}
   307  		if _, err = tracer.GetResult(); err != nil {
   308  			b.Fatal(err)
   309  		}
   310  		statedb.RevertToSnapshot(snap)
   311  	}
   312  }
   313  
   314  // TestZeroValueToNotExitCall tests the calltracer(s) on the following:
   315  // Tx to A, A calls B with zero value. B does not already exist.
   316  // Expected: that enter/exit is invoked and the inner call is shown in the result
   317  func TestZeroValueToNotExitCall(t *testing.T) {
   318  	var to = common.HexToAddress("0x00000000000000000000000000000000deadbeef")
   319  	privkey, err := crypto.HexToECDSA("0000000000000000deadbeef00000000000000000000000000000000deadbeef")
   320  	if err != nil {
   321  		t.Fatalf("err %v", err)
   322  	}
   323  	signer := types.NewEIP155Signer(big.NewInt(1))
   324  	tx, err := types.SignNewTx(privkey, signer, &types.LegacyTx{
   325  		GasPrice: big.NewInt(0),
   326  		Gas:      50000,
   327  		To:       &to,
   328  	})
   329  	if err != nil {
   330  		t.Fatalf("err %v", err)
   331  	}
   332  	origin, _ := signer.Sender(tx)
   333  	txContext := vm.TxContext{
   334  		Origin:   origin,
   335  		GasPrice: big.NewInt(1),
   336  	}
   337  	context := vm.BlockContext{
   338  		CanTransfer: core.CanTransfer,
   339  		Transfer:    core.Transfer,
   340  		Coinbase:    common.Address{},
   341  		BlockNumber: new(big.Int).SetUint64(8000000),
   342  		Time:        new(big.Int).SetUint64(5),
   343  		Difficulty:  big.NewInt(0x30000),
   344  		GasLimit:    uint64(6000000),
   345  	}
   346  	var code = []byte{
   347  		byte(vm.PUSH1), 0x0, byte(vm.DUP1), byte(vm.DUP1), byte(vm.DUP1), // in and outs zero
   348  		byte(vm.DUP1), byte(vm.PUSH1), 0xff, byte(vm.GAS), // value=0,address=0xff, gas=GAS
   349  		byte(vm.CALL),
   350  	}
   351  	var alloc = core.GenesisAlloc{
   352  		to: core.GenesisAccount{
   353  			Nonce: 1,
   354  			Code:  code,
   355  		},
   356  		origin: core.GenesisAccount{
   357  			Nonce:   0,
   358  			Balance: big.NewInt(500000000000000),
   359  		},
   360  	}
   361  	_, statedb := tests.MakePreState(rawdb.NewMemoryDatabase(), alloc, false)
   362  	// Create the tracer, the EVM environment and run it
   363  	tracer, err := tracers.New("callTracer", nil, nil)
   364  	if err != nil {
   365  		t.Fatalf("failed to create call tracer: %v", err)
   366  	}
   367  	evm := vm.NewEVM(context, txContext, statedb, params.MainnetChainConfig, vm.Config{Debug: true, Tracer: tracer})
   368  	msg, err := tx.AsMessage(signer, nil)
   369  	if err != nil {
   370  		t.Fatalf("failed to prepare transaction for tracing: %v", err)
   371  	}
   372  	st := core.NewStateTransition(evm, msg, new(core.GasPool).AddGas(tx.Gas()))
   373  	if _, err = st.TransitionDb(); err != nil {
   374  		t.Fatalf("failed to execute transaction: %v", err)
   375  	}
   376  	// Retrieve the trace result and compare against the etalon
   377  	res, err := tracer.GetResult()
   378  	if err != nil {
   379  		t.Fatalf("failed to retrieve trace result: %v", err)
   380  	}
   381  	have := new(callTrace)
   382  	if err := json.Unmarshal(res, have); err != nil {
   383  		t.Fatalf("failed to unmarshal trace result: %v", err)
   384  	}
   385  	wantStr := `{"type":"CALL","from":"0x682a80a6f560eec50d54e63cbeda1c324c5f8d1b","to":"0x00000000000000000000000000000000deadbeef","value":"0x0","gas":"0x7148","gasUsed":"0x2d0","input":"0x","output":"0x","calls":[{"type":"CALL","from":"0x00000000000000000000000000000000deadbeef","to":"0x00000000000000000000000000000000000000ff","value":"0x0","gas":"0x6cbf","gasUsed":"0x0","input":"0x","output":"0x"}]}`
   386  	want := new(callTrace)
   387  	json.Unmarshal([]byte(wantStr), want)
   388  	if !jsonEqual(have, want) {
   389  		t.Error("have != want")
   390  	}
   391  }